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Synergistic impacts of habitat loss and fragmentation on model ecosystems

机译:生境丧失和破碎化对模型生态系统的协同影响

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摘要

Habitat loss and fragmentation are major threats to biodiversity, yet separating their effects is challenging. We use a multi-trophic, trait-based, and spatially explicit general ecosystem model to examine the independent and synergistic effects of these processes on ecosystem structure. We manipulated habitat by removing plant biomass in varying spatial extents, intensities, and configurations. We found that emergent synergistic interactions of loss and fragmentation are major determinants of ecosystem response, including population declines and trophic pyramid shifts. Furthermore, trait-mediated interactions, such as a disproportionate sensitivity of large-sized organisms to fragmentation, produce significant effects in shaping responses. We also show that top-down regulation mitigates the effects of land use on plant biomass loss, suggesting that models lacking these interactions—including most carbon stock models—may not adequately capture land-use change impacts. Our results have important implications for understanding ecosystem responses to environmental change, and assessing the impacts of habitat fragmentation.
机译:生境的丧失和破碎化是对生物多样性的主要威胁,但要分开其影响却是挑战。我们使用多营养,基于特征的空间显式通用生态系统模型来研究这些过程对生态系统结构的独立和协同效应。我们通过在不同的空间范围,强度和配置中去除植物生物量来操纵栖息地。我们发现丢失和碎片化的新兴协同相互作用是生态系统响应的主要决定因素,包括种群下降和营养金字塔移动。此外,性状介导的相互作用,例如大型生物体对破碎的不成比例的敏感性,在塑造反应中产生了显着影响。我们还表明,自上而下的法规减轻了土地利用对植物生物量流失的影响,表明缺乏这些相互作用的模型(包括大多数碳库模型)可能无法充分反映土地利用变化的影响。我们的结果对于理解生态系统对环境变化的反应以及评估栖息地破碎化的影响具有重要意义。

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